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Structural and magnetic phase transitions in simple oxides using hybrid functionals

机译:使用混合功能的简单氧化物的结构和磁性相变

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摘要

We present the structural as well as elastic properties of the alkaline earth oxides and FeO, calculated using hybrid exchange functionals within DFT. We show that by empirically fitting the amount of Fock-exchange in the hybrid functionals, we can accurately reproduce the pressure-induced phase transitions for MgO, CaO, SrO and BaO. For FeO the hybrid functionals predict an insulator <-> metal transition at ca. 150 GPa, associated with an i-B8 <-> B8 structural phase transition. The structural phase transition is accompanied by a spin transition from a high- to low-spin electron configuration on the Fe2+ ions. Hence, FeO undergoes a magnetic phase transition from an anti-ferromagnetic to non-magnetic structure. We also find that as the ionicity of the polymorphs increases a higher fraction of Fock-exchange is required to reproduce the structural volumes reported from experiments.
机译:我们介绍了使用DFT中的混合交换功能计算得出的碱土金属氧化物和FeO的结构以及弹性性能。我们表明,通过经验拟合混合功能中的Fock交换量,我们可以准确地重现MgO,CaO,SrO和BaO的压力诱导相变。对于FeO,杂合功能预测在约200℃时绝缘子会发生金属过渡。 150 GPa,与i-B8-B8结构相变有关。结构相变伴随着Fe2 +离子从高自旋电子构型到低自旋电子构型的自旋转变。因此,FeO经历从反铁磁结构到非磁性结构的磁相变。我们还发现,随着多晶型物的离子性增加,需要更高比例的Fock交换来重现实验报告的结构体积。

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